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Treatment of oilfield produced water by anaerobic process coupled with micro-electrolysis

机译:厌氧-微电解联合处理油田采出水

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Treatment of oilfield produced water was investigated using an anaerobic process coupled with micro-electrolysis (ME), focusing on changes in chemical oxygen demand (COD) and biodegradability. Results showed that COD exhibited an abnormal change in the single anaerobic system in which it increased within the first 168 hr, but then decreased to 222 mg/L after 360 hr. The biological oxygen demand (five-day) (BOD_5)/COD ratio of the water increased from 0.05 to 0.15. Hydrocarbons in the wastewater, such as pectin, degraded to small molecules during the hydrolytic acidification process. Comparatively, the effect of ME was also investigated. The COD underwent a slight decrease and the BOD_5/COD ratio of the water improved from 0.05 to 0.17 after ME. Removal of COD was 38.3% under the idealized ME conditions (pH 6.0), using iron and active carbon (80 and 40 g/L, respectively). Coupling the anaerobic process with ME accelerated the COD removal ratio (average removal was 53.3%). Gas chromatography/mass spectrometry was used to analyze organic species conversion. This integrated system appeared to be a useful option for the treatment of water produced in oilfields.
机译:使用厌氧工艺结合微电解(ME)研究了油田采出水的处理,重点是化学需氧量(COD)和生物降解性的变化。结果表明,COD在单个厌氧系统中表现出异常变化,在最初的168小时内增加,但在360小时后降至222 mg / L。水的生物需氧量(五天)(BOD_5)/ COD比从0.05增加到0.15。在水解酸化过程中,废水中的碳氢化合物(如果胶)降解为小分子。比较地,还研究了ME的作用。 ME后,COD略有降低,水的BOD_5 / COD比从0.05提高到0.17。使用铁和活性炭(分别为80和40 g / L),在理想的ME条件(pH 6.0)下,COD的去除率为38.3%。厌氧工艺与ME的结合加快了COD去除率(平均去除率为53.3%)。气相色谱/质谱法用于分析有机物的转化。该集成系统似乎是处理油田产生的水的有用选择。

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